10siHydrogen storage in chemical compounds is a promising strategy to enable lightweight, high-density, and safe hydrogen technologies. However, the hydrogen release rate from these chemicals is limited by the intrinsic catalytic activity of metal catalysts, which can be enhanced by light irradiation. Here, nanohybrids including a core of plasmonic TiN and multiple Pt nanocrystal catalytic centers are assembled and show, under resonant conditions at 700 nm, hot electron-driven hydrogen evolution from ammonia borane at an apparent quantum yield of 120%. It is also demonstrated that solar irradiation enhances the activity of TiN-Pt nanohybrids by one order of magnitude through two synergistic mechanisms: hot electrons and collective-heating c...
Ammonia borane (AB) is a hydrogen storage material which can produce three equivalent moles of H-2 g...
Constructing plasmonic-semiconductor nanoarchitecture provides a photocatalytic platform for enhanci...
Nanoscale heating by optical excitation of plasmonic nanoparticles offers a new perspective of contr...
We present the fabrication of core-shell-satellite Au@SiO2 -Pt nanostructures and demonstrate that L...
Gold nanorods show great potential in harvesting natural sunlight and generating hot charge carriers...
The smart design of plasmonic nanostructures offers a unique capability for the efficient conversion...
Metal nanoparticles are excellent light absorbers. The absorption processes create highly excited el...
Light-driven plasmonic enhancement of chemical reactions on metal catalysts is a promising strategy ...
The optical resonances of plasmonic nanostructures depend critically on the geometrical details of t...
The plasmonic endothermic oxidation of ammonium ions in a spinning disk reactor resulted in light en...
ABSTRACT: Heterogeneous catalysis is of paramount importance in chemistry and energy applications. C...
© 2021 American Chemical Society. While hot carrier generation from surface plasmon decay at the sur...
The conversion of light to electrical and chemical energy has the potential to provide meaningful ad...
Localized surface plasmon resonance (LSPR) of plasmonic nanoparticles and nanostructures has attract...
International audienceThe use of light as primary energy source in chemical transformations is one m...
Ammonia borane (AB) is a hydrogen storage material which can produce three equivalent moles of H-2 g...
Constructing plasmonic-semiconductor nanoarchitecture provides a photocatalytic platform for enhanci...
Nanoscale heating by optical excitation of plasmonic nanoparticles offers a new perspective of contr...
We present the fabrication of core-shell-satellite Au@SiO2 -Pt nanostructures and demonstrate that L...
Gold nanorods show great potential in harvesting natural sunlight and generating hot charge carriers...
The smart design of plasmonic nanostructures offers a unique capability for the efficient conversion...
Metal nanoparticles are excellent light absorbers. The absorption processes create highly excited el...
Light-driven plasmonic enhancement of chemical reactions on metal catalysts is a promising strategy ...
The optical resonances of plasmonic nanostructures depend critically on the geometrical details of t...
The plasmonic endothermic oxidation of ammonium ions in a spinning disk reactor resulted in light en...
ABSTRACT: Heterogeneous catalysis is of paramount importance in chemistry and energy applications. C...
© 2021 American Chemical Society. While hot carrier generation from surface plasmon decay at the sur...
The conversion of light to electrical and chemical energy has the potential to provide meaningful ad...
Localized surface plasmon resonance (LSPR) of plasmonic nanoparticles and nanostructures has attract...
International audienceThe use of light as primary energy source in chemical transformations is one m...
Ammonia borane (AB) is a hydrogen storage material which can produce three equivalent moles of H-2 g...
Constructing plasmonic-semiconductor nanoarchitecture provides a photocatalytic platform for enhanci...
Nanoscale heating by optical excitation of plasmonic nanoparticles offers a new perspective of contr...